在对撞机大坝安装偏转板,以尽量减少总溶解气体的百分比

Pub Date : 2023-09-08 DOI:10.1590/2318-0331.282320230024
M. V. Andriolo, A. N. D. Araújo, Carolina Fontanelli, Cássia Silmara Aver Paranhos, Marcela Politano, P. Dettmer
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引用次数: 0

摘要

在自愿或非自愿泄漏期间,总溶解气体(TDG)可能会增加,并可能导致受影响鱼类的气泡病(GBD)。在collider中,在泄漏事件中携带的气泡通过俯冲射流被输送到尾流中的深部高压区域,在那里溶解增强,TDG浓度增加。为了减少水电站大坝下游总渗水过饱和,最常见的替代方案是在溢洪道面上安装导流板。为了减少对撞机溢洪道下游的TDG水平,Copel用偏转板改造了四个溢洪道海湾,并于2021年11月完成了施工。两项研究为偏转板的设计提供了帮助。第一项研究包括1:60比例的物理模型的开发,另一项研究是基于开源工具箱OpenFoam的数值模型。
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Installation of deflector in Colider Dam to minimize the percentual of total dissolved gases
ABSTRACT During voluntary or involuntary spills, the total dissolved gas (TDG) may increase with potential of causing gas bubble disease (GBD) in affected fish. Bubbles entrained during spill events in Colider are transported by plunging jets to deep, high pressure, regions in the tailrace where dissolution is enhanced increasing TDG concentrations. The most common alternative to minimize TDG supersaturation downstream of hydropower dams is to install deflectors on the spillway face. In order to reduce TDG levels downstream of the Colider's spillway, Copel retrofitted the four spillway bays with deflectors, finalizing the construction in November 2021. The design of the deflectors were assisted with two studies. The first study comprised the development of a physical model in 1:60 scale, and other study was a numerical model based on the open-source toolbox OpenFoam.
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